We study a modified Landau–de Gennes model for nematic liquid crystals, where the elastic term is assumed to be of subquadratic growth in the gradient. We analyze the behaviour of global minimizers in two- and three-dimensional domains, subject to uniaxial boundary conditions, in the asymptotic regime where the length scale of the defect cores is small compared to the length scale of the domain. We obtain uniform convergence of the minimizers and of their gradients, away from the singularities of the limiting uniaxial map. We also demonstrate the presence of maximally biaxial cores in minimizers on two-dimensional domains, when the temperature is sufficiently low
We consider the Landau-de Gennes variational model for nematic liquid crystals, in three-dimensional...
We consider the Landau-de Gennes variational model for nematic liquid crystals, in three-dimensional...
We study small energy solutions within the Landau-de Gennes theory for nematic liquid crystals, subj...
We study a modfied Landau-de Gennes model for nematic liquid crystals, where the elastic term is as...
We study a modified Landau-de Gennes model for nematic liq- uid crystals, where the elastic term is ...
e study a modified Landau-de Gennes model for nematic liq- uid crystals, where the elastic term is a...
We study global minimizers of a continuum Landau-De Gennes energy functional for nematic liquid crys...
62 pages, 4 figures.We consider the Landau-de Gennes variational model for nematic liquid crystals, ...
We study global minimizers of a continuum Landau-De Gennes energy functional for nematic liquid crys...
In this thesis we consider the Landau-de Gennes variational model for nematic liquid crystals. Nemat...
We study the asymptotic behavior of the minimisers of the Landau-de Gennes model for nematic liquid ...
We study global minimizers of a continuum Landau-De Gennes energy functional for nematic liquid crys...
In this note we report on some recent progress [10, 11, 12] about the study of global minimizers of ...
We study global minimizers of the Landau–de Gennes (LdG) energy functional for nematic liquid crysta...
Nous nous intéressons aux cristaux liquides nématiques, qui sont une phase de la matière intermédiai...
We consider the Landau-de Gennes variational model for nematic liquid crystals, in three-dimensional...
We consider the Landau-de Gennes variational model for nematic liquid crystals, in three-dimensional...
We study small energy solutions within the Landau-de Gennes theory for nematic liquid crystals, subj...
We study a modfied Landau-de Gennes model for nematic liquid crystals, where the elastic term is as...
We study a modified Landau-de Gennes model for nematic liq- uid crystals, where the elastic term is ...
e study a modified Landau-de Gennes model for nematic liq- uid crystals, where the elastic term is a...
We study global minimizers of a continuum Landau-De Gennes energy functional for nematic liquid crys...
62 pages, 4 figures.We consider the Landau-de Gennes variational model for nematic liquid crystals, ...
We study global minimizers of a continuum Landau-De Gennes energy functional for nematic liquid crys...
In this thesis we consider the Landau-de Gennes variational model for nematic liquid crystals. Nemat...
We study the asymptotic behavior of the minimisers of the Landau-de Gennes model for nematic liquid ...
We study global minimizers of a continuum Landau-De Gennes energy functional for nematic liquid crys...
In this note we report on some recent progress [10, 11, 12] about the study of global minimizers of ...
We study global minimizers of the Landau–de Gennes (LdG) energy functional for nematic liquid crysta...
Nous nous intéressons aux cristaux liquides nématiques, qui sont une phase de la matière intermédiai...
We consider the Landau-de Gennes variational model for nematic liquid crystals, in three-dimensional...
We consider the Landau-de Gennes variational model for nematic liquid crystals, in three-dimensional...
We study small energy solutions within the Landau-de Gennes theory for nematic liquid crystals, subj...